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Updated: May 1, 2026

Reverse Genetics to Engineer Positive-Sense RNA Virus Variants
Published on: June 9, 2022
Hepatitis C virus NS5A inhibitors and drug resistance mutations
Shingo Nakamoto1, Tatsuo Kanda1, Shuang Wu1
1Shingo Nakamoto, Hiroshi Shirasawa, Department of Molecular Virology, Graduate School of Medicine, Chiba University, Chiba 260-8677, Japan.
Abstract:
Some direct-acting antiviral agents for hepatitis C virus (HCV), such as telaprevir and boceprevir have been available since 2011. It was reported that HCV NS5A is associated with interferon signaling related to HCV replication and hepatocarcinogenesis. HCV NS5A inhibitors efficiently inhibited HCV replication in vitro. Human studies showed that dual, triple and quad regimens with HCV NS5A inhibitors, such as daclatasvir and ledipasvir, in combination with other direct-acting antiviral agents against other regions of HCV with or without peginterferon/ribavirin, could efficiently inhibit HCV replication according to HCV genotypes. These combinations might be a powerful tool for "difficult-to-treat" HCV-infected patients. "First generation" HCV NS5A inhibitors such as daclatasvir, ledipasvir and ABT-267, which are now in phase III clinical trials, could result in resistance mutations. "Second generation" NS5A inhibitors such as GS-5816, ACH-3102, and MK-8742, have displayed improvements in the genetic barrier while maintaining potency. HCV NS5A inhibitors are safe at low concentrations, which make them attractive for use despite low genetic barriers, although, in fact, HCV NS5A inhibitors should be used with HCV NS3/4A inhibitors, HCV NS5B inhibitors or peginterferon plus ribavirin. This review article describes HCV NS5A inhibitor resistance mutations and recommends that HCV NS5A inhibitors be used in combination regimens potent enough to prevent the emergence of resistant variants.
Insights
Hepatitis C virus (HCV) NS5A inhibitors are effective against HCV replication. Combination therapies are recommended to prevent resistance mutations, especially for difficult-to-treat patients.
Area of Science:
- Hepatology
- Virology
- Pharmacology
Background:
- Direct-acting antiviral agents (DAAs) for hepatitis C virus (HCV) have been available since 2011.
- HCV NS5A plays a role in viral replication and hepatocarcinogenesis.
- HCV NS5A inhibitors demonstrate potent in vitro inhibition of viral replication.
Purpose of the Study:
- To review resistance mutations associated with HCV NS5A inhibitors.
- To recommend optimal combination regimens for HCV treatment.
Main Methods:
- Review of existing literature on HCV NS5A inhibitors, their efficacy, resistance patterns, and combination therapies.
- Analysis of clinical trial data for first- and second-generation NS5A inhibitors.
Main Results:
- Dual, triple, and quad regimens including NS5A inhibitors show high efficacy across HCV genotypes.
- First-generation NS5A inhibitors may lead to resistance mutations.
- Second-generation NS5A inhibitors offer improved genetic barriers and potency.
- NS5A inhibitors are safe at low concentrations but require combination use.
Conclusions:
- Combination therapy with potent regimens is crucial to prevent the emergence of HCV NS5A resistance variants.
- HCV NS5A inhibitors are valuable tools, particularly for difficult-to-treat patients, when used judiciously in combination regimens.
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